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在小鼠后肢固定后恢复期间的肌肉再生潜力和卫星细胞激活特征。

Muscle regeneration potential and satellite cell activation profile during recovery following hindlimb immobilization in mice.

机构信息

Department of Pulmonology-Muscle Wasting Cachexia in Chronic Respiratory Diseases Lung Cancer Research Group, IMIM-Hospital del Mar Parc de Salut Mar, Health and Sciences Experimental Department (CEXS), Universitat Pompeu Fabra (UPF), Barcelona Biomedical Research Park (PRBB), Barcelona, Spain.

Centro de Investigación en Red de Enfermedades Respiratorias (CIBERES), Instituto de Salud Carlos III (ISCIII), Barcelona, Spain.

出版信息

J Cell Physiol. 2018 May;233(5):4360-4372. doi: 10.1002/jcp.26282. Epub 2018 Jan 2.

Abstract

Reduced muscle activity leads to muscle atrophy and function loss in patients and animal models. Satellite cells (SCs) are postnatal muscle stem cells that play a pivotal role in skeletal muscle regeneration following injury. The regenerative potential, satellite cell numbers, and markers during recovery following immobilization of the hindlimb for 7 days were explored. In mice exposed to 7 days of hindlimb immobilization, in those exposed to recovery (7 days, splint removal), and in contralateral control muscles, muscle precursor cells were isolated from all hindlimb muscles (fluorescence-activated cell sorting, FACS) and SCs, and muscle regeneration were identified using immunofluorescence (gastrocnemius and soleus) and electron microscopy (EM, gastrocnemius). Expression of ki67, pax7, myoD, and myogenin was quantified (RT-PCR) from SC FACS yields. Body and grip strength were determined. Following 7 day hindlimb immobilization, a decline in SCs (FACS, immunofluorescence) was observed together with an upregulation of SC activation markers and signs of muscle regeneration including fusion to existing myofibers (EM). Recovery following hindlimb immobilization was characterized by a program of muscle regeneration events. Hindlimb immobilization induced a decline in SCs together with an upregulation of markers of SC activation, suggesting that fusion to existing myofibers takes place during unloading. Muscle recovery induced a significant rise in muscle precursor cells and regeneration events along with reduced SC activation expression markers and a concomitant rise in terminal muscle differentiation expression. These are novel findings of potential applicability for the treatment of disuse muscle atrophy, which is commonly associated with severe chronic and acute conditions.

摘要

肌肉活动减少会导致患者和动物模型的肌肉萎缩和功能丧失。卫星细胞(SCs)是骨骼肌再生的关键,是一种在肌肉损伤后发挥作用的成体肌肉干细胞。研究了 7 天肢体固定后恢复过程中的再生潜能、卫星细胞数量和标志物。在暴露于 7 天肢体固定的小鼠中,在那些暴露于恢复(7 天,去除夹板)和对侧对照肌肉中的小鼠中,从所有后肢肌肉(荧光激活细胞分选,FACS)和卫星细胞中分离肌肉前体细胞,并通过免疫荧光(比目鱼肌和跖肌)和电子显微镜(EM,比目鱼肌)鉴定肌肉再生。从 SC FACS 产量中定量(RT-PCR)ki67、pax7、myoD 和 myogenin 的表达。测定体重和握力。在 7 天肢体固定后,观察到 SCs(FACS,免疫荧光)减少,同时 SC 激活标志物上调,以及肌肉再生的迹象,包括与现有肌纤维融合(EM)。肢体固定后的恢复以肌肉再生事件的程序为特征。肢体固定会导致 SCs 减少,同时 SC 激活标志物上调,这表明在去负荷过程中会发生与现有肌纤维融合。肌肉恢复会引起肌肉前体细胞和再生事件的显著增加,同时降低 SC 激活表达标志物,并伴随终末肌肉分化表达的增加。这些是肌肉失用性萎缩治疗的潜在适用性的新发现,肌肉失用性萎缩通常与严重的慢性和急性疾病有关。

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